| Literature DB >> 35528404 |
Yu-Qi Gao1, Yi Hou1, Liming Zhu2, Guzhou Chen1, Dongyang Xu1, Sheng-Yong Zhang3, Yupeng He2, Weiqing Xie1,4.
Abstract
A bio-inspired synthesis of hybrid flavonoids from 2-hydroxylchalcone is described. Under the irradiation of 24 W CFL, 2-hydroxychalcone reacts with various nucleophiles to deliver structurally diverse hybrid flavonoids in good to excellent yields in the presence of a catalytic Brønsted acid. Moreover, moderate enantioselectivities could be obtained using a catalytic chiral phosphoric acid via counter anion directed addition. Based on mechanistic studies, the reaction is proposed to proceed via tandem double-bond isomerization/dehydrated cyclization of 2-hydroxychalcone to form a transient flavylium cation, which is in situ captured by nucleophiles to afford hybrid flavonoids. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35528404 PMCID: PMC9071822 DOI: 10.1039/c9ra07198a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Previous protocols for the synthesis of hybrid flavonoids and a bio-inspired synthesis of hybrid flavonoids form 2-hydrxoychalcone.
Optimization of the reaction conditionsa
|
| ||||
|---|---|---|---|---|
| Entry | Catalyst | Solvent | Time (h) | Yield |
| 1 | CPA | MeCN | 18 | 73 |
| 2 | CSA | MeCN | 18 | 42 |
| 3 | HCl | MeCN | 18 | 40 |
| 4 | Biphenyl phosphate | MeCN | 30 | 98 |
| 5 | TsOH | MeCN | 42 | 45 |
| 6 | TFA | MeCN | 42 | 43 |
| 7 | — | MeCN | 42 | ND |
| 8 | Biphenyl phosphate | MeCN | 42 | ND |
| 9 | Biphenyl phosphate | THF | 19 | 98 |
Reaction conditions: to a mixture of hydroxyl chalcone 1a (0.1 mmol) and indole (0.12 mmol) was added solvent (3 mL). The reaction mixture was stirred with irradiation by household 24 W compact fluorescent lamp (CFL).
Isolated yields.
The reaction was carried out in the dark.
Scheme 1Substrate scope with regard to indole as nucleophile.
Scheme 2Substrate scope using bifunctional nucleophiles.
Scheme 3Sunlight-driven synthesis of hybrid flavonoids.
Scheme 4Chiral phosphoric acid catalyzed enantioselective addition of nucleophile to 2-hydroxychalcone.
Scheme 5Mechanistic studies.